mirror of
https://igit.ific.uv.es/alramos/latticegpu.jl.git
synced 2025-05-14 11:13:42 +02:00
Improved support for flow integrators
This commit is contained in:
parent
410a6d7b25
commit
d19b3a1132
8 changed files with 154 additions and 66 deletions
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@ -21,6 +21,7 @@ dag(a::SU2{T}) where T <: AbstractFloat = inverse(a)
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norm(a::SU2{T}) where T <: AbstractFloat = sqrt(abs2(a.t1) + abs2(a.t2))
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norm2(a::SU2{T}) where T <: AbstractFloat = abs2(a.t1) + abs2(a.t2)
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tr(g::SU2{T}) where T <: AbstractFloat = complex(2.0*real(g.t1), 0.0)
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dev_one(g::SU2{T}) where T <: AbstractFloat = sqrt(( abs2(g.t1 - one(T)) + abs2(g.t2))/2)
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"""
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function normalize(a::T) where {T <: Group}
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@ -12,6 +12,9 @@
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inverse(a::SU3{T}) where T <: AbstractFloat = SU3{T}(conj(a.u11),conj(a.u21),(a.u12*a.u23 - a.u13*a.u22), conj(a.u12),conj(a.u22),(a.u13*a.u21 - a.u11*a.u23))
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dag(a::SU3{T}) where T <: AbstractFloat = inverse(a)
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tr(a::SU3{T}) where T <: AbstractFloat = a.u11+a.u22+conj(a.u11*a.u22 - a.u12*a.u21)
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dev_one(g::SU3{T}) where T <: AbstractFloat = sqrt(( abs2(g.u11 - one(T)) + abs2(g.u12) + abs2(g.u13) + abs2(g.u21) + abs2(g.u22 - one(T)) + abs2(g.u23) )/6)
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function Base.:*(a::SU3{T},b::SU3{T}) where T <: AbstractFloat
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@ -47,7 +47,7 @@ include("GroupU1.jl")
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export U1, U1alg
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export dot, expm, exp, dag, normalize, inverse, tr, projalg, norm, norm2, isgroup, alg2mat
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export dot, expm, exp, dag, normalize, inverse, tr, projalg, norm, norm2, isgroup, alg2mat, dev_one
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end # module
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@ -17,7 +17,7 @@ include("Groups/Groups.jl")
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using .Groups
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export Group, Algebra
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export SU2, SU2alg, SU3, SU3alg, M3x3, M2x2, U1, U1alg
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export dot, expm, exp, dag, normalize, inverse, tr, projalg, norm, norm2, isgroup, alg2mat
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export dot, expm, exp, dag, normalize, inverse, tr, projalg, norm, norm2, isgroup, alg2mat, dev_one
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include("Space/Space.jl")
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@ -41,7 +41,9 @@ using .YM
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export ztwist
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export YMworkspace, GaugeParm, force0_wilson!, field, field_pln, randomize!, zero!, norm2
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export gauge_action, hamiltonian, plaquette, HMC!, OMF4!
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export wfl_euler, wfl_rk3, zfl_euler, zfl_rk3, Eoft_clover, Eoft_plaq, Qtop
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export Eoft_clover, Eoft_plaq, Qtop
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export FlowIntr, wfl_euler, zfl_euler, wfl_rk2, zfl_rk2, wfl_rk3, zfl_rk3
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export flw, flw_adapt
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export sfcoupling
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end # module
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@ -137,7 +137,9 @@ include("YMhmc.jl")
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export gauge_action, hamiltonian, plaquette, HMC!, OMF4!
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include("YMflow.jl")
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export wfl_euler, wfl_rk3, zfl_euler, zfl_rk3, Eoft_clover, Eoft_plaq, Qtop
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export FlowIntr, flw, flw_adapt
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export Eoft_clover, Eoft_plaq, Qtop
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export FlowIntr, wfl_euler, zfl_euler, wfl_rk2, zfl_rk2, wfl_rk3, zfl_rk3
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include("YMsf.jl")
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export sfcoupling
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166
src/YM/YMflow.jl
166
src/YM/YMflow.jl
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@ -9,6 +9,68 @@
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### created: Sat Sep 25 08:37:14 2021
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###
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struct FlowIntr{N,T}
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r::T
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e0::NTuple{N,T}
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e1::NTuple{N,T}
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add_zth::Bool
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c0::T
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eps::T
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tol::T
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eps_ini::T
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max_eps::T
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sft_fac::T
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end
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# pre-defined integrators
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wfl_euler(::Type{T}, eps::T, tol::T) where T = FlowIntr{0,T}(one(T),(),(),false,one(T),eps,tol,one(T)/200,one(T)/10,9/10)
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zfl_euler(::Type{T}, eps::T, tol::T) where T = FlowIntr{0,T}(one(T),(),(),true, (one(T)*5)/3,eps,tol,one(T)/200,one(T)/10,9/10)
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wfl_rk2(::Type{T}, eps::T, tol::T) where T = FlowIntr{1,T}(one(T)/2,(-one(T)/2,),(one(T),),false,one(T),eps,tol,one(T)/200,one(T)/10,9/10)
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zfl_rk2(::Type{T}, eps::T, tol::T) where T = FlowIntr{1,T}(one(T)/2,(-one(T)/2,),(one(T),),true, (one(T)*5)/3,eps,tol,one(T)/200,one(T)/10,9/10)
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wfl_rk3(::Type{T}, eps::T, tol::T) where T = FlowIntr{2,T}(one(T)/4,(-17/36,-one(T)),(8/9,3/4),false,one(T),eps,tol,one(T)/200,one(T)/10,9/10)
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zfl_rk3(::Type{T}, eps::T, tol::T) where T = FlowIntr{2,T}(one(T)/4,(-17/36,-one(T)),(8/9,3/4),true, (one(T)*5)/3,eps,tol,one(T)/200,one(T)/10,9/10)
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function Base.show(io::IO, int::FlowIntr{N,T}) where {N,T}
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if (abs(int.c0-1) < 1.0E-10)
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println(io, "WILSON flow integrator")
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elseif (abs(int.c0-5/3) < 1.0E-10) && int.add_zth
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println(io, "ZEUTHEN flow integrator")
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elseif (abs(int.c0-5/3) < 1.0E-10) && !int.add_zth
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println(io, "SYMANZIK flow integrator")
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else
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println(io, "CUSTOM flow integrator")
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if int.add_zth
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println(io, " - ", int.c0, " (with zeuthen term)")
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else
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println(io, " - ", int.c0)
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end
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end
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if N == 0
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println(io, " * Euler schem3")
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elseif N == 1
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println(io, " * One stage scheme. Coefficients3")
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println(io, " stg 1: ", int.e0[1], " ", int.e1[1])
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elseif N == 2
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println(io, " * Two stage scheme. Coefficients:")
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println(io, " stg 1: ", int.e0[1], " ", int.e1[1])
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println(io, " stg 2: ", int.e0[2], " ", int.e1[2])
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end
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println(io, " * Fixed step size parameters: eps = ", int.eps)
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println(io, " * Adaptive step size parameters: tol = ", int.tol)
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println(io, " - max eps: ", int.max_eps)
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println(io, " - initial eps: ", int.eps_ini)
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println(io, " - safety scale: ", int.sft_fac)
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return nothing
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end
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"""
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function add_zth_term(ymws::YMworkspace, U, lp)
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@ -73,69 +135,82 @@ function krnl_add_zth!(frc, frc2::AbstractArray{TA}, U::AbstractArray{TG}, lp::S
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return nothing
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end
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function flw_euler(U, ns, eps, c0, gp::GaugeParm, lp::SpaceParm, ymws::YMworkspace; add_zth=false)
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@timeit "Integrating flow equations (Euler)" begin
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function flw(U, int::FlowIntr{NI,T}, ns::Int64, eps, gp::GaugeParm, lp::SpaceParm, ymws::YMworkspace) where {NI,T}
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@timeit "Integrating flow equations" begin
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for i in 1:ns
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force_gauge(ymws, U, c0, 1, gp, lp)
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if add_zth
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add_zth_term(ymws::YMworkspace, U, lp)
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end
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U .= expm.(U, ymws.frc1, 2*eps)
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end
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end
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return nothing
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end
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function flw_rk3(U, ns, eps, c0, gp::GaugeParm, lp::SpaceParm, ymws::YMworkspace; add_zth=false)
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@timeit "Integrating flow equations (RK3)" begin
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for i in 1:ns
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e0 = eps/2
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force_gauge(ymws, U, c0, 1, gp, lp)
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if add_zth
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force_gauge(ymws, U, int.c0, 1, gp, lp)
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if int.add_zth
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add_zth_term(ymws::YMworkspace, U, lp)
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end
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ymws.mom .= ymws.frc1
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U .= expm.(U, ymws.mom, e0)
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U .= expm.(U, ymws.mom, 2*eps*int.r)
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e0 = -34*eps/36
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e1 = 16*eps/9
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force_gauge(ymws, U, c0, 1, gp, lp)
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if add_zth
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for k in 1:NI
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force_gauge(ymws, U, int.c0, 1, gp, lp)
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if int.add_zth
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add_zth_term(ymws::YMworkspace, U, lp)
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end
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ymws.mom .= e0.*ymws.mom .+ e1.*ymws.frc1
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U .= expm.(U, ymws.mom)
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e1 = 6*eps/4
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force_gauge(ymws, U, c0, 1, gp, lp)
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if add_zth
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add_zth_term(ymws::YMworkspace, U, lp)
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ymws.mom .= int.e0[k].*ymws.mom .+ int.e1[k].*ymws.frc1
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U .= expm.(U, ymws.mom, 2*eps)
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end
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ymws.mom .= e1.*ymws.frc1 .- ymws.mom
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U .= expm.(U, ymws.mom)
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end
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end
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return nothing
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end
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flw(U, int::FlowIntr{NI,T}, ns::Int64, gp::GaugeParm, lp::SpaceParm, ymws::YMworkspace) where {NI,T} = flw(U, int, ns, int.eps, gp, lp, ymws)
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##
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# Adaptive step size integrators
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##
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function flw_adapt(U, int::FlowIntr{NI,T}, tend::T, epsini::T, gp::GaugeParm, lp::SpaceParm, ymws::YMworkspace) where {NI,T}
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wfl_euler(U, ns, eps, gp::GaugeParm, lp::SpaceParm, ymws::YMworkspace) = flw_euler(U, ns, eps, 1, gp, lp, ymws)
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zfl_euler(U, ns, eps, gp::GaugeParm, lp::SpaceParm, ymws::YMworkspace) = flw_euler(U, ns, eps, 5.0/3.0, gp, lp, ymws, add_zth=true)
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wfl_rk3(U, ns, eps, gp::GaugeParm, lp::SpaceParm, ymws::YMworkspace) = flw_rk3(U, ns, eps, 1, gp, lp, ymws)
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zfl_rk3(U, ns, eps, gp::GaugeParm, lp::SpaceParm, ymws::YMworkspace) = flw_rk3(U, ns, eps, 5.0/3.0, gp, lp, ymws, add_zth=true)
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eps = int.eps_ini
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dt = tend
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nstp = 0
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while true
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ns = convert(Int64, floor(dt/eps))
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if ns > 10
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flw(U, int, 9, eps, gp, lp, ymws)
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ymws.U1 .= U
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flw(U, int, 2, eps/2, gp, lp, ymws)
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flw(ymws.U1, int, 1, eps, gp, lp, ymws)
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dt = dt - 10*eps
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nstp = nstp + 10
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# adjust step size
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ymws.U1 .= ymws.U1 ./ U
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maxd = CUDA.mapreduce(dev_one, max, ymws.U1, init=zero(tend))
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eps = min(int.max_eps, 2*eps, int.sft_fac*eps*(int.tol/maxd)^(one(tend)/3))
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else
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flw(U, int, ns, eps, gp, lp, ymws)
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dt = dt - ns*eps
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flw(U, int, 1, dt, gp, lp, ymws)
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dt = zero(tend)
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nstp = nstp + ns + 1
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end
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if dt == zero(tend)
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break
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end
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end
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return nstp, eps
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end
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flw_adapt(U, int::FlowIntr{NI,T}, tend::T, gp::GaugeParm, lp::SpaceParm, ymws::YMworkspace) where {NI,T} = flw_adapt(U, int, tend, int.eps_ini, gp, lp, ymws)
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##
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# Observables
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##
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"""
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function Eoft_plaq([Eslc,] U, gp::GaugeParm, lp::SpaceParm, ymws::YMworkspace)
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@ -160,7 +235,7 @@ function Eoft_plaq(Eslc, U, gp::GaugeParm{T}, lp::SpaceParm{N,M,B,D}, ymws::YMwo
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CUDA.@cuda threads=lp.bsz blocks=lp.rsz krnl_plaq_pln!(ymws.cm, U, gp.Ubnd, ztw[ipl], ipl, lp)
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end
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Etmp .= (gp.ng .- reshape(Array(CUDA.mapreduce(real, +, ymws.cm;dims=tp)),lp.iL[end])/V3 )
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Etmp .= (gp.ng .- reshape(Array(CUDA.mapreduce(real, +, ymws.cm;dims=tp)),lp.iL[end]) ./ V3 )
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if ipl < N
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for it in 2:lp.iL[end]
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Eslc[it,ipl] = Etmp[it] + Etmp[it-1]
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@ -201,7 +276,7 @@ function krnl_plaq_pln!(plx, U::AbstractArray{T}, Ubnd::T, ztw, ipl, lp::SpacePa
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end
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I = point_coord((b,r), lp)
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plx[I] = ztw*tr(U[b,1,r]*gt / (U[b,2,r]*U[bu2,id1,ru2]))
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plx[I] = ztw*tr(U[b,id1,r]*gt / (U[b,id2,r]*U[bu2,id1,ru2]))
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return nothing
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end
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@ -219,22 +294,23 @@ function Qtop(Qslc, U, gp::GaugeParm, lp::SpaceParm{4,M,B,D}, ymws::YMworkspace)
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ztw = ztwist(gp, lp)
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tp = (1,2,3)
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fill!(ymws.rm, zero(eltype(ymws.rm)))
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CUDA.@sync begin
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CUDA.@cuda threads=lp.bsz blocks=lp.rsz krnl_field_tensor!(ymws.frc1, ymws.frc2, U, gp.Ubnd, 1,6, ztw[1], ztw[5], lp)
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CUDA.@cuda threads=lp.bsz blocks=lp.rsz krnl_field_tensor!(ymws.frc1, ymws.frc2, U, gp.Ubnd, 1,6, ztw[1], ztw[6], lp)
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end
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CUDA.@sync begin
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CUDA.@cuda threads=lp.bsz blocks=lp.rsz krnl_add_qd!(ymws.rm, -, ymws.frc1, ymws.frc2, U, lp)
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end
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CUDA.@sync begin
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CUDA.@cuda threads=lp.bsz blocks=lp.rsz krnl_field_tensor!(ymws.frc1, ymws.frc2, U, gp.Ubnd, 2,5, ztw[2], ztw[4], lp)
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CUDA.@cuda threads=lp.bsz blocks=lp.rsz krnl_field_tensor!(ymws.frc1, ymws.frc2, U, gp.Ubnd, 2,5, ztw[2], ztw[5], lp)
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end
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CUDA.@sync begin
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CUDA.@cuda threads=lp.bsz blocks=lp.rsz krnl_add_qd!(ymws.rm, +, ymws.frc1, ymws.frc2, U, lp)
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end
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CUDA.@sync begin
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CUDA.@cuda threads=lp.bsz blocks=lp.rsz krnl_field_tensor!(ymws.frc1, ymws.frc2, U, gp.Ubnd, 3,4, ztw[3], ztw[6], lp)
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CUDA.@cuda threads=lp.bsz blocks=lp.rsz krnl_field_tensor!(ymws.frc1, ymws.frc2, U, gp.Ubnd, 3,4, ztw[3], ztw[4], lp)
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end
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CUDA.@sync begin
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CUDA.@cuda threads=lp.bsz blocks=lp.rsz krnl_add_qd!(ymws.rm, -, ymws.frc1, ymws.frc2, U, lp)
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@ -37,7 +37,7 @@ function gauge_action(U, lp::SpaceParm, gp::GaugeParm{T}, ymws::YMworkspace{T})
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return S
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end
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function plaquette(U, lp::SpaceParm, gp::GaugeParm, ymws::YMworkspace)
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function plaquette(U, lp::SpaceParm{N,M,B,D}, gp::GaugeParm, ymws::YMworkspace) where {N,M,B,D}
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ztw = ztwist(gp, lp)
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@timeit "Plaquette measurement" begin
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@ -7,7 +7,7 @@ Pkg.activate("/lhome/ific/a/alramos/s.images/julia/workspace/LatticeGPU")
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using LatticeGPU
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# Set lattice/block size
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ntwist = (0,0,0,1,0,0)
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ntwist = (0,0,0,0,0,0)
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lp = SpaceParm{4}((32,32,32,32), (4,4,4,4), BC_PERIODIC, ntwist)
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println("Space Parameters: ", lp)
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@ -44,6 +44,8 @@ println("\n## WILSON ACTION/FLOW TIMES")
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gp = GaugeParm{PREC}(GRP{PREC}, 6.0, 1.0, (0.5,0.5))
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println("Gauge Parameters: ", gp)
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flwint = wfl_rk3(PREC, 0.005, 1.0E-6)
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println(flwint)
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println("Initial Action: ")
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@time S = gauge_action(U, lp, gp, ymws)
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@ -62,11 +64,12 @@ for i in 1:4
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# println("SF coupling: ", x, " ", y)
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end
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wfl_rk3(U, 1, 0.01, gp, lp, ymws)
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Ucp = Array(U)
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println("Action: ", gauge_action(U, lp, gp, ymws))
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flw(U, flwint, 1, gp, lp, ymws)
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println("Time for 100 steps of RK3 flow integrator: ")
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@time wfl_rk3(U, 100, 0.01, gp, lp, ymws)
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@time flw(U, flwint, 400, gp, lp, ymws)
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||||
eoft = Eoft_plaq(U, gp, lp, ymws)
|
||||
eoft = Eoft_clover(U, gp, lp, ymws)
|
||||
qtop = Qtop(U, gp, lp, ymws)
|
||||
|
@ -77,8 +80,6 @@ println("Plaq: ", eoft)
|
|||
println("Clov: ", eoft)
|
||||
@time qtop = Qtop(U, gp, lp, ymws)
|
||||
println("Qtop: ", qtop)
|
||||
|
||||
println("Action: ", gauge_action(U, lp, gp, ymws))
|
||||
println("## END Wilson action/flow measurements")
|
||||
|
||||
# Set gauge parameters
|
||||
|
@ -87,6 +88,9 @@ println("\n## IMPROVED ACTION/FLOW TIMES")
|
|||
gp = GaugeParm{PREC}(GRP{PREC}, 6.0, 5/6, (0.5,0.5))
|
||||
println("Gauge Parameters: ", gp)
|
||||
|
||||
flwint = zfl_rk3(PREC, 0.01, 1.0E-6)
|
||||
println(flwint)
|
||||
|
||||
println("Initial Action: ")
|
||||
@time S = gauge_action(U, lp, gp, ymws)
|
||||
|
||||
|
@ -100,11 +104,11 @@ for i in 1:4
|
|||
println("# Plaquette: ", pl[end], "\n")
|
||||
end
|
||||
|
||||
zfl_rk3(U, 1, 0.01, gp, lp, ymws)
|
||||
flw(U, flwint, 1, gp, lp, ymws)
|
||||
|
||||
println("Action: ", gauge_action(U, lp, gp, ymws))
|
||||
println("Time for 100 steps of RK3 flow integrator: ")
|
||||
@time zfl_rk3(U, 100, 0.01, gp, lp, ymws)
|
||||
@time flw(U, flwint, 100, gp, lp, ymws)
|
||||
println("Action: ", gauge_action(U, lp, gp, ymws))
|
||||
println("## END improved action/flow measurements")
|
||||
|
||||
|
|
Loading…
Add table
Add a link
Reference in a new issue